👤 Lu Lu

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846
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581
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Also published as: Win-Long Lu, W F Lu, Jianquan Lu, Xiaofeng Lu, Y Lu, Fengjuan Lu, Tianchi Lu, Chao Lu, Meifen Lu, Wenli Lu, Bi Nan Lu, Mei-Chin Lu, Qiong-Wen Lu, Jia-Wei Lu, Yang Lu, Tong Lu, Zhiqi Lu, Jiameng Lu, Hui Lu, Hong S Lu, Wenbin Lu, Hailong Lu, Yanan Lu, Xiuling Lu, Guo-Tao Lu, Zhe Lu, Xufeng Lu, Li-Qun Lu, Xiyi Lu, Rui Lu, Chaoxia Lu, Mei Lu, Xin-Yun Lu, Xiaoqian Lu, Anqing Lu, Jingyi Lu, Guang-Xiu Lu, Zhiqiang Lu, Mengchen Lu, Xinyue Lu, Zhikui Lu, Yun Lu, Xueying Lu, Xinyu Lu, Xueren Lu, Yijie Lu, Yulan Lu, Liuyi Lu, Yifu Lu, Gen Lu, Ming Lu, Wen-Yu Lu, Shun-Wen Lu, Weiyue Lu, Haojie Lu, Chuming Lu, L Jason Lu, Ko-Ting Lu, Min Lu, Xiu-Min Lu, Shaoli Lu, Yifei Lu, Juan Lu, Qianqian Lu, Baiquan Lu, Chuantao Lu, Hongzheng Lu, Jieli Lu, Quanchao Lu, Jack Lu, Kangle Lu, Yijia Lu, You-Yong Lu, Fubo Lu, Xing Lu, Sihai Lu, Li-Hong Lu, Bocheng Lu, Ce Lu, Li-Fan Lu, You-Guang Lu, Qingxia Lu, Yanfei Lu, Kongmiao Lu, Yuyan Lu, Meili Lu, Chunqin Lu, Quotao Lu, Qiuji Lu, Songtao Lu, Hongyan Lu, Louise Weiwei Lu, Xun Lu, Xuzhang Lu, Liang Lu, Yanjie Lu, Lingshan Lu, Dihan Lu, Lin Lu, Jing Lu, Xiuyun Lu, Yuanzhi Lu, Zhi-Jie Lu, Zongyang Lu, Sijing Lu, Na Lu, Guojing Lu, Jun-Hua Lu, Lihong Lu, Xi Lu, Suu-Yi Lu, Siqi Lu, Haiying Lu, Fan Lu, Ziyu Lu, Liumei Lu, Guangzhen Lu, Xiao-Ting Lu, Zhong-Jiao Lu, Lin-Lin Lu, Jingxiao Lu, Zhijian Lu, Yanmei Lu, Hongyun Lu, Guangqing Lu, Hong-Sheng Lu, Jie Lu, Qiang Lu, Yu-Jing Lu, Cheng-Yin Lu, Jiahong Lu, Xiangfeng Lu, Weina Lu, Qiongshi Lu, Guangxiu Lu, Zhiyuan Lu, Jiang Lu, Linhe Lu, Hongzhi Lu, Liangqun Lu, Shuyan Lu, Ru-Band Lu, Nanji Lu, Yinying Lu, Qing Lu, Hongyuan Lu, Mingze Lu, Zhanjun Lu, Tianyi Lu, Tian Lu, Yao Lu, Hai-Lin Lu, Lixia Lu, Cong Lu, Jia-Huan Lu, Chenghao Lu, Zhen-Ning Lu, Daru Lu, Yanwei Lu, I-Hsuan Lu, Weisheng Lu, Jialing Lu, Feng Lu, Jiahui Lu, Yunhan Lu, Hsueh-Han Lu, Baiyi Lu, Ake T Lu, Dah-Yuu Lu, Yangyang Lu, Xuelei Lu, Zexiu Lu, Zhimin Lu, Jinsong Lu, Yun-Xin Lu, Xiulan Lu, Rena Lu, Ning Lu, Po-Han Lu, Hailin Lu, Ping Lu, Jia-Cheng Lu, Hongwei Lu, Yong Lu, Shenji Lu, Junfeng Lu, Meng-Yao Lu, Huan Lu, Qun Lu, Jun-Yu Lu, Peng Lu, Xiaochen Lu, Wen-Ling Lu, Xiao-Peng Lu, Zhi-Hua Lu, Tao Lu, Desheng Lu, Zhao Lu, Bai Lu, Fengmin Lu, Cuihua Lu, Feiyu Lu, Shih Hsin Lu, Yuhe Lu, Rongzu Lu, Guangping Lu, Fuer Lu, Jia Lu, Weilin Lu, Zhongwen Lu, Yilin Lu, Weijia Lu, Yan-Yang Lu, Chen Lu, Qiufang Lu, James Lu, Yunqing Lu, Yuntao Lu, Wensheng Lu, Yingying Lu, Feng-Min Lu, Li Lu, Lizhi Lu, Zekuan Lu, Ling Lu, Chunxia Lu, Meidan Lu, Hong-Fen Lu, Jianguang Lu, Xiu-Li Lu, Qian Lu, Ligong Lu, Rui-Jin Lu, Zekun Lu, Qiuling Lu, Chenxi Lu, Mengkai Lu, Fengchun Lu, Chia-Wen Lu, Bingxiao Lu, Chuan Lu, Jen-Her Lu, Guanyi Lu, Changlian Lu, Liyan Lu, Shuwen Lu, Xiaodan Lu, Mei-Kuang Lu, Tianfei Lu, Bing Lu, Lei Lu, Karen Lu, Shiwan Lu, Fang-Mei Lu, Yunwei Lu, Siqian Lu, Fenghua Lu, Ze Lu, Xu Lu, Zhen Lu, Meiting Lu, Quqin Lu, Yangguang Lu, Xinxin Lu, Fei Lu, Hong-Wei Lu, Jiajing Lu, Taicheng Lu, Yun-Tao Lu, Huixiu Lu, Jiachun Lu, Hongyu Lu, Hongzhao Lu, Xiaobo Lu, Chong Lu, Jiapeng Lu, Yen-Shen Lu, Ruifang Lu, Jiawen Lu, Chengjun Lu, Chia-Sing Lu, Bei Lu, Junyu Lu, Ke Lu, Lina Lu, Meng-Lun Lu, Hengyu Lu, Zhaoxu Lu, Xubin Lu, Jingbo Lu, Wan-Jung Lu, Shijing Lu, Xingmei Lu, Baosai Lu, Haiyang Lu, Cuiyu Lu, Lingeng Lu, Wensi Lu, Muxing Lu, Q Richard Lu, Ruling Lu, Tingting Lu, Jingtao Lu, Yifan Lu, Daoyuan Lu, Yushen Lu, Wenyan Lu, YongMei Lu, Lili Lu, Degan Lu, Weida Lu, Chenqi Lu, Chao-Xia Lu, Deyun Lu, Dongliang Lu, Furong Lu, Wen Lu, S Lu, Conghua Lu, Kaihua Lu, L-G Lu, Meng Lu, Huai-En Lu, Weiwei Lu, Shaohua Lu, Binjie Lu, Yue Lu, Linrong Lu, Tse-Min Lu, Zhiliang Lu, Xiaocui Lu, Shu Lu, Kuo-Cheng Lu, Yanli Lu, Yufei Lu, Xiaoyun Lu, Xun-Xi Lu, Jacqueline G Lu, Siwen Lu, R F Lu, Yabin Lu, Haocheng Lu, Liaoxun Lu, Huaihai Lu, Xuejin Lu, Quanlong Lu, Shunyuan Lu, Jinchang Lu, Hanzhang Lu, Man Lu, Luo Lu, Qiumin Lu, Y P Lu, Shengnan Lu, Jian-Qiang Lu, Chongmei Lu, S C Lu, Qitong Lu, Weili Lu, Yongxu Lu, Shemin Lu, Xinran Lu, Saien Lu, Haijiao Lu, Ya-Ling Lu, JiaJia Lu, Xi-Rong Lu, Dongdong Lu, Congyu Lu, Aiping Lu, Peirong Lu, Shuang Lu, Hong Lu, Yingli Lu, Yanliu Lu, Junyan Lu, Yingchang Lu, Yin Lu, Quan Lu, Junliang Lu, Qisheng Lu, X Lu, Kai Lu, Shu-Chen Lu, Kachun Lu, Qianyi Lu, Ju Lu, Xiao Ye Lu, Yanting Lu, Qianjin Lu, Hsiu-Yi Lu, Minjie Lu, Zhikun Lu, Tzu-Pin Lu, Ruirui Lu, Xinliang Lu, Lai-Ya Lu, Wenyun Lu, Xuehan Lu, Youyong Lu, Qiaozhi Lu, Ting Lu, Lijuan Lu, Zhaoxiang Lu, Jianrao Lu, Kaikai Lu, Xian-Ping Lu, Nannan Lu, Weiqin Lu, You-Wang Lu, Huiyan Lu, Wenjing Lu, Zefa Lu, Minjia Lu, Yunyan Lu, Yi Lu, Guotao Lu, Lingna Lu, Jun Lu, Tianshi Lu, Shixin Lu, Bin Lu, Xingsheng Lu, Dongxu Lu, Jiawei Lu, Le Lu, Xiaomei Lu, Yafeng Lu, Cui-Tao Lu, Ji-Zhen Lu, Yucui Lu, Mimi Lu, Xin Lu, Jianxiong Lu, Changlong Lu, Bao-Xin Lu, Xiyuan Lu, Xiaofei Lu, Yong-Jie Lu, Tim Lu, Q Lu, Xiaoyu Lu, Linwei Lu, Siyu Lu, Ying-Qi Lu, Chi-Yu Lu, Lucy Lu, Heng Lu, Jianrong Lu, Yuting Lu, Jenn-Kan Lu, Minke Lu, Kui Lu, Charles Lu, Rui-fang Lu, Michael T Lu, Wei Lu, Xiaojia Lu, Yingmin Lu, You-Hui Lu, Zongliang Lu, Bingyuan Lu, Yuyao Lu, Yiyu Lu, Jinhua Lu, Tanmin Lu, Lihua Lu, Song Lu, Sophia Lu, Yuanyuan Lu, Dong Lu, R B Lu, Qi Lu, Zhengde Lu, Jiong Lu, Jin Lu, Tsai-Te Lu, Chian-Yu Lu, Ronghua Lu, Haiyan Lu, Ying-Mei Lu, Guye Lu, Di Lu, Wenwen Lu, Xiaoting Lu, Hao Lu, Yen-Te Lu, Shi-Chun Lu, Tom Z Lu, Mengting Lu, Chengbiao Lu, Kuo-Yun Lu, Guodong Lu, Catherine P Lu, Yaoyao Lu, Jia-Hong Lu, Wei-Cheng Lu, Weihong Lu, Haiyuan Lu, Chun-Wei Lu, Licheng Lu, Dingyi Lu, Weiping Lu, J Y Lu, Xinchi Lu, Xuefeng Lu, Qiong Lu, Yunrui Lu, Jingen Lu, Chung Lun Lu, Zhijie Lu, Chuanyong Lu, Qunshan Lu, William W Lu, D Lu, Sumei Lu, Yan Lu, Mengji Lu, Zhengyang Lu, Zhonglei Lu, Lijun Lu, Yuqiang Lu, Wenjie Lu, Shounan Lu, Xiaozhao Lu, Yiran Lu, Yanlai Lu, Jingjiu Lu, Xingrong Lu, Yunkun Lu, Xinhua Lu, Cheng Lu, Zhi Lu, Meishan Lu, Wenxing Lu, Zhiming Lu, Zhan Lu, Tingsha Lu, Fanghui Lu, Kangkang Lu, Yu Lu, Ying Lu, Juming Lu, Kang Lu, Zipeng Lu, Rong Lu, Zequn Lu, Zhixing Lu, Guang Lu, Qiao Lu, Weisi Lu, MingFang Lu, Yuanbin Lu, Jing-Bo Lu, Yu-Ning Lu, Han-Zhi Lu, James T Lu, Xiaoyan Lu, Qingwei Lu, Chuanwen Lu, L Lu, Jianwei Lu, Xiao-Lu Lu, Boxun Lu, Kefeng Lu, Renquan Lu, Hanzhi Lu, Ye Lu, Yen-Jung Lu, Zhike Lu, Shan Lu, Da-Ding Lu, Tianlan Lu, Yinglin Lu, Han Lu, Junxi Lu, Nonghua Lu, Jian Lu, Yonghui Lu, Zengkui Lu
articles
Shizhen Ding, Dandan Wu, Quotao Lu +7 more · 2020 · American journal of cancer research · added 2026-04-24
Angiopoietin-like 4 (ANGPLT4) regulates lipid metabolism by inhibiting lipoprotein lipase. Abnormal ANGTPL4 levels are associated with metabolic syndrome, atherosclerosis, inflammation, and cancer. We Show more
Angiopoietin-like 4 (ANGPLT4) regulates lipid metabolism by inhibiting lipoprotein lipase. Abnormal ANGTPL4 levels are associated with metabolic syndrome, atherosclerosis, inflammation, and cancer. We show here that ANGPTL4-deficient mice have abnormally large numbers of macrophages in the spleen, and that these macrophages produce large amounts of TNF-α, CD86, and inducible nitric oxide synthase. However, recombinant ANGPTL4 protein did not inhibit macrophage function Show less
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ANGPTL4
Xiaoshun Shi, Ruidong Li, Xiaoying Dong +6 more · 2020 · Journal of translational medicine · BioMed Central · added 2026-04-24
Tumour cells interfere with normal immune functions by affecting the expression of some immune-related genes, which play roles in the prognosis of cancer patients. In recent years, immunotherapy for t Show more
Tumour cells interfere with normal immune functions by affecting the expression of some immune-related genes, which play roles in the prognosis of cancer patients. In recent years, immunotherapy for tumours has been widely studied, but a practical prognostic model based on immune-related genes in lung adenocarcinoma comparable to existing model has not been established and reported. We first obtained publicly accessible lung adenocarcinoma RNA expression data from The Cancer Genome Atlas (TCGA) for differential gene expression analysis and then filtered immune-related genes based on the ImmPort database. By using the lasso algorithm and multivariate Cox Proportional-Hazards (CoxPH) regression analysis, we identified candidate genes for model development and validation. The robustness of the model was further examined by comparing the model with three established gene models. Gene expression data from a total of 524 lung adenocarcinoma patients from TCGA were used for model development. We identified four biomarkers (MAP3K8, CCL20, VEGFC, and ANGPTL4) that could predict overall survival in lung adenocarcinoma (HR = 1.98, 95% CI 1.48 to 2.64, P = 4.19e-06) and this model could be used as a classifier for the evaluation of low-risk and high-risk groups. This model was validated with independent microarray data and was highly comparable with previously reported gene expression signatures for lung adenocarcinoma prognosis. In this study, we identified a practical and robust four-gene prognostic model based on an immune gene dataset with cross-platform compatibility. This model has potential value in improving TNM staging for survival predictions in patients with lung adenocarcinoma. The study provides a method of immune relevant gene prognosis model and the identification of immune gene classifier for the prediction of lung adenocarcinoma prognosis with RNA sequencing and microarray compatibility. Show less
📄 PDF DOI: 10.1186/s12967-020-02233-y
ANGPTL4
Kaifeng Guo, Pan Pan, Mian Wu +3 more · 2020 · Molecular and cellular endocrinology · Elsevier · added 2026-04-24
Angiopoietin-like-4 (ANGPTL4) is reported to mediate proteinuria in some types of glomerulonephropathy. However, the mechanism underlying the effect on podocytes of ANGPTL4 under pathologic conditions Show more
Angiopoietin-like-4 (ANGPTL4) is reported to mediate proteinuria in some types of glomerulonephropathy. However, the mechanism underlying the effect on podocytes of ANGPTL4 under pathologic conditions in diabetic nephropathy (DN) is unclear. We investigated the role of ANGPTL4 in the pathogenesis of DN. In DN rats, elevated ANGPTL4 expression was associated with increased proteinuria, glomerular hypertrophy, and ultrastructural changes in podocytes. In vitro, hyperglycemia induced the upregulation of ANGPTL4, which led to activation of integrin-β1/FAK signaling with increased apoptosis of podocytes and actin cytoskeleton derangement. These pathological changes were reversed by transfection with a lentivirus expressing short hairpin RNA against integrin-β1 or an ANGPTL4-neutralizing antibody in vitro. Furthermore, supplementation with the sialic acid precursor ManNAc reversed these pathological changes and conferred renoprotection in a mouse model of DN. Our findings suggest that ANGPTL4 mediates high glucose-induced loss of podocytes by modulating their detachment and apoptosis in vivo and in vitro. This study deepens our understanding of the mechanisms of podocyte loss in DN and shows targeting ANGPTL4-related signaling has therapeutic potential for DN. Show less
no PDF DOI: 10.1016/j.mce.2020.110730
ANGPTL4
Shuaiyang Zhou, Jin Tu, Shizhen Ding +7 more · 2020 · Pathology oncology research : POR · Springer · added 2026-04-24
Colorectal cancer (CRC) is one of the most aggressive tumours in the human digestive system. Most CRC patients have poor prognosis due to metastasis and recurrence. Angiopoietin-like 4 (ANGPTL4) is in Show more
Colorectal cancer (CRC) is one of the most aggressive tumours in the human digestive system. Most CRC patients have poor prognosis due to metastasis and recurrence. Angiopoietin-like 4 (ANGPTL4) is involved in tumour development. Regulatory T (Treg) cells and M2 macrophages promote tumour growth and metastasis. Herein, we explored the changes of ANGPTL4 expression in CRC patients at different stages and observed whether in situ tumour-Treg and -M2 macrophages are correlated with ANGPTL4 expression. Serum ANGPTL4 (sANGPTL4) levels of 70 CRC patients and 10 healthy controls were detected by ELISA. ANGPTL4, Foxp3 and CD163 expression levels in CRC tissues were measured by immunohistochemistry. Recombinant ANGPTL4 (rANGPTL4) proteins were further added into cell-culture systems for induction of Treg cells and M2 macrophages. The results showed both sANGPTL4 and in situ tumour-ANGPTL4 expression levels increased in Dukes C-D stage CRC patients. Foxp3 Show less
no PDF DOI: 10.1007/s12253-019-00695-0
ANGPTL4
Bing Shu, Yongjian Zhao, Shitian Zhao +12 more · 2020 · Bone research · Nature · added 2026-04-24
Axin1 is a negative regulator of β-catenin signaling and its role in osteoblast precursor cells remains undefined. In the present studies, we determined changes in postnatal bone growth by deletion of
📄 PDF DOI: 10.1038/s41413-020-0104-5
AXIN1
Sajjan Koirala, Jonathon Klein, Yumei Zheng +16 more · 2020 · Cell reports · Elsevier · added 2026-04-24
Spatiotemporal control of Wnt/β-catenin signaling is critical for organism development and homeostasis. The poly-(ADP)-ribose polymerase Tankyrase (TNKS1) promotes Wnt/β-catenin signaling through PARy Show more
Spatiotemporal control of Wnt/β-catenin signaling is critical for organism development and homeostasis. The poly-(ADP)-ribose polymerase Tankyrase (TNKS1) promotes Wnt/β-catenin signaling through PARylation-mediated degradation of AXIN1, a component of the β-catenin destruction complex. Although Wnt/β-catenin is a niche-restricted signaling program, tissue-specific factors that regulate TNKS1 are not known. Here, we report prostate-associated gene 4 (PAGE4) as a tissue-specific TNKS1 inhibitor that robustly represses canonical Wnt/β-catenin signaling in human cells, zebrafish, and mice. Structural and biochemical studies reveal that PAGE4 acts as an optimal substrate decoy that potently hijacks substrate binding sites on TNKS1 to prevent AXIN1 PARylation and degradation. Consistently, transgenic expression of PAGE4 in mice phenocopies TNKS1 knockout. Physiologically, PAGE4 is selectively expressed in stromal prostate fibroblasts and functions to establish a proper Wnt/β-catenin signaling niche through suppression of autocrine signaling. Our findings reveal a non-canonical mechanism for TNKS1 inhibition that functions to establish tissue-specific control of the Wnt/β-catenin pathway. Show less
no PDF DOI: 10.1016/j.celrep.2020.107922
AXIN1
Wei Miao, Tanmin Lu, Xiaolin Liu +2 more · 2020 · Cancer biomarkers : section A of Disease markers · added 2026-04-24
Ovarian carcinoma ranks fifth in the leading causes of cancer-relevant deaths among the female, with the highest fatality rate in all gynecological malignant tumors and the rising incidence worldwide. Show more
Ovarian carcinoma ranks fifth in the leading causes of cancer-relevant deaths among the female, with the highest fatality rate in all gynecological malignant tumors and the rising incidence worldwide. Mounting evidence has unveiled that lncRNAs are implicated in the tumorigenesis and cancer development. Several studies have proven the carcinogenic role of SNHG8 in various malignancies, but the physiological functions of SNHG8 in ovarian carcinoma need more detailed explanations. The present study certified that inhibition of SNHG8 executed suppressive activities in ovarian carcinoma by obstructing cell proliferation, migration, EMT process and stemness as well as driving cell apoptosis. Moreover, SNHG8 bound with CAPRIN1 and positively modulated the expression of CAPRIN1. Further experiments manifested that CTNNB1 and Axin1 displayed a binding affinity with CAPRIN1. Knockdown of CAPRIN1 promoted the mRNA degradation of CTNNB1 and Axin1. Finally, we corroborated that CTNNB1 (or Axin1) ectopic expression or activation of Wnt/β-catenin pathway abrogated the effects of SNHG8 downregulation on the cellular process of ovarian carcinoma cells. To summarize, SNHG8 acted as an oncogene in ovarian carcinoma via targeting Wnt/β-catenin pathway, providing a new insight into understanding ovarian carcinoma at the molecular level. Show less
no PDF DOI: 10.3233/CBM-190640
AXIN1
Ancheng Qin, Jianwu Wu, Min Zhai +5 more · 2020 · American journal of translational research · added 2026-04-24
Hepatocellular carcinoma (HCC) is one of the most common malignant tumors with a high mortality rate and low survival rate. This study was designed to explore a novel molecular with high sensitivity a Show more
Hepatocellular carcinoma (HCC) is one of the most common malignant tumors with a high mortality rate and low survival rate. This study was designed to explore a novel molecular with high sensitivity and specificity, which can be applied in early diagnosis and therapeutic evaluation of HCC. The current study aims to investigate the effect and important role of Axin1 on cell proliferation, invasion, migration and epithelial-mesenchymal transition (EMT) in hepatocellular carcinoma. qRT-PCR results showed lower Axin1 expression level and higher miR-650 expression level in HCC. Luciferase reporter assay was carried out to verify the negative correlation between Axin1 and miR-650 mRNA levels. CCK-8 assay results showed that the cell proliferation ability was significantly suppressed by Axin1 overexpression in SK-HEP-1 cells. The results in wound healing assay uncovered that cell migration ability was markedly suppressed by Axin1 overexpression. The results in trans-well invasion assay showed that Axin1 overexpression caused decreased invasive ability in SK-HEP-1 cells. The WB results showed that the protein level of E-cad was significantly increased and the protein levels of N-cad, vimentin and snail were obviously reduced following Axin1 overexpression. Whereas, the suppressive effects on cell proliferation, migration, invasion and EMT caused by Axin1 overexpression were abolished by miR-650 mimic. All the results in the current study confirmed the truth that Axin1 overexpression could suppress cell proliferation, migration, invasion and EMT by downregulating miR-650 expression. Show less
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AXIN1
Mengying Zhai, Zixia Yang, Chenrui Zhang +6 more · 2020 · Cell death & disease · Nature · added 2026-04-24
Hepatocellular carcinoma (HCC) is one of the most prevalent human malignancies worldwide and has high morbidity and mortality. Elucidating the molecular mechanisms underlying HCC recurrence and metast Show more
Hepatocellular carcinoma (HCC) is one of the most prevalent human malignancies worldwide and has high morbidity and mortality. Elucidating the molecular mechanisms underlying HCC recurrence and metastasis is critical to identify new therapeutic targets. This study aimed to determine the roles of aminopeptidase N (APN, also known as CD13) in HCC proliferation and metastasis and its underlying mechanisms. We detected APN expression in clinical samples and HCC cell lines using immunohistochemistry, flow cytometry, real-time PCR, and enzyme activity assays. The effects of APN on HCC metastasis and proliferation were verified in both in vitro and in vivo models. RNA-seq, phosphoproteomic, western blot, point mutation, co-immunoprecipitation, and proximity ligation assays were performed to reveal the potential mechanisms. We found that APN was frequently upregulated in HCC tumor tissues and high-metastatic cell lines. Knockout of APN inhibited HCC cell metastasis and proliferation in vitro and in vivo. Functional studies suggested that a loss of APN impedes the ERK signaling pathway in HCC cells. Mechanistically, we found that APN might mediate the phosphorylation at serine 31 of BCKDK (BCKDK Show less
📄 PDF DOI: 10.1038/s41419-020-2610-1
BCKDK
Qin Tian, Ping Yuan, Chuntao Quan +14 more · 2020 · Oncogene · Nature · added 2026-04-24
Branched-chain α-keto acid dehydrogenase kinase (BCKDK), the key enzyme of branched-chain amino acids (BCAAs) metabolism, has been reported to promote colorectal cancer (CRC) tumorigenesis by upregula Show more
Branched-chain α-keto acid dehydrogenase kinase (BCKDK), the key enzyme of branched-chain amino acids (BCAAs) metabolism, has been reported to promote colorectal cancer (CRC) tumorigenesis by upregulating the MEK-ERK signaling pathway. However, the profile of BCKDK in metastatic colorectal cancer (mCRC) remains unknown. Here, we report a novel role of BCKDK in mCRC. BCKDK is upregulated in CRC tissues. Increased BCKDK expression was associated with metastasis and poor clinical prognosis in CRC patients. Knockdown of BCKDK decreased CRC cell migration and invasion ex vivo, and lung metastasis in vivo. BCKDK promoted the epithelial mesenchymal transition (EMT) program, by decreasing the expression of E-cadherin, epithelial marker, and increasing the expression of N-cadherin and Vimentin, which are mesenchymal markers. Moreover, BCKDK-knockdown experiments in combination with phosphoproteomics analysis revealed the potent role of BCKDK in modulating multiple signal transduction pathways, including EMT and metastasis. Src phosphorylated BCKDK at the tyrosine 246 (Y246) site in vitro and ex vivo. Knockdown and knockout of Src downregulated the phosphorylation of BCKDK. Importantly, phosphorylation of BCKDK by Src enhanced the activity and stability of BCKDK, thereby promoting the migration, invasion, and EMT of CRC cells. In summary, the identification of BCKDK as a novel prometastatic factor in human CRC will be beneficial for further diagnostic biomarker studies and suggests novel targeting opportunities. Show less
📄 PDF DOI: 10.1038/s41388-020-1262-z
BCKDK
Dongfeng Li, Zaixu Pan, Kun Zhang +7 more · 2020 · Genes · MDPI · added 2026-04-24
High-quality chicken meat is an important source of animal protein for humans. Gene expression profiles in breast muscle tissue were determined, aiming to explore the common regulatory genes relevant Show more
High-quality chicken meat is an important source of animal protein for humans. Gene expression profiles in breast muscle tissue were determined, aiming to explore the common regulatory genes relevant to muscle and intramuscular fat (IMF) during the developmental stage in chickens. Results show that breast muscle weight (BMW), breast meat percentage (BMP, %), and IMF (%) continuously increased with development. A total of 256 common differentially expressed genes (DEGs) during the developmental stage were screened. Among them, some genes related to muscle fiber hypertrophy were upregulated (e.g., CSRP3, LMOD2, MUSTN1, MYBPC1), but others (e.g., ACTC1, MYL1, MYL4) were downregulated from Week 3 to Week 18. During this period, expression of some DEGs related to the cells cycle (e.g., CCNB3, CCNE2, CDC20, MCM2) changed in a way that genetically suggests possible inhibitory regulation on cells number. In addition, DEGs associated with energy metabolism (e.g., ACOT9, CETP, LPIN1, DGAT2, RBP7, FBP1, PHKA1) were found to regulate IMF deposition. Our data identified and provide new insights into the common regulatory genes related to muscle growth, cell proliferation, and energy metabolism at the developmental stage in chickens. Show less
📄 PDF DOI: 10.3390/genes11030244
CETP
Yu Zhong, Kabhilan Mohan, Jinpeng Liu +17 more · 2020 · Biochimica et biophysica acta. Molecular basis of disease · Elsevier · added 2026-04-24
Juvenile neuronal ceroid lipofuscinosis (JNCL, aka. juvenile Batten disease or CLN3 disease) is a lysosomal storage disease characterized by progressive blindness, seizures, cognitive and motor failur Show more
Juvenile neuronal ceroid lipofuscinosis (JNCL, aka. juvenile Batten disease or CLN3 disease) is a lysosomal storage disease characterized by progressive blindness, seizures, cognitive and motor failures, and premature death. JNCL is caused by mutations in the Ceroid Lipofuscinosis, Neuronal 3 (CLN3) gene, whose function is unclear. Although traditionally considered a neurodegenerative disease, CLN3 disease displays eye-specific effects: Vision loss not only is often one of the earliest symptoms of JNCL, but also has been reported in non-syndromic CLN3 disease. Here we described the roles of CLN3 protein in maintaining healthy retinal pigment epithelium (RPE) and normal vision. Using electroretinogram, fundoscopy and microscopy, we showed impaired visual function, retinal autofluorescent lesions, and RPE disintegration and metaplasia/hyperplasia in a Cln3 ~ 1 kb-deletion mouse model [1] on C57BL/6J background. Utilizing a combination of biochemical analyses, RNA-Seq, Seahorse XF bioenergetic analysis, and Stable Isotope Resolved Metabolomics (SIRM), we further demonstrated that loss of CLN3 increased autophagic flux, suppressed mTORC1 and Akt activities, enhanced AMPK activity, and up-regulated gene expression of the autophagy-lysosomal system in RPE-1 cells, suggesting autophagy induction. This CLN3 deficiency induced autophagy induction coincided with decreased mitochondrial oxygen consumption, glycolysis, the tricarboxylic acid (TCA) cycle, and ATP production. We also reported for the first time that loss of CLN3 led to glycogen accumulation despite of impaired glycogen synthesis. Our comprehensive analyses shed light on how loss of CLN3 affect autophagy and metabolism. This work suggests possible links among metabolic impairment, autophagy induction and lysosomal storage, as well as between RPE atrophy/degeneration and vision loss in JNCL. Show less
📄 PDF DOI: 10.1016/j.bbadis.2020.165883
CLN3
Zhonghua Chen, Weiwei Ruan, Menglu Li +4 more · 2020 · Genetic testing and molecular biomarkers · added 2026-04-24
no PDF DOI: 10.1089/gtmb.2020.0017
EXT1
Jianmin Chen, Weihong Lu, Yi Zhang +3 more · 2020 · Asian journal of psychiatry · Elsevier · added 2026-04-24
In this study, we hypothesized that fatty acid desaturase-1 (FADS1) and fatty acid desaturase-2 (FADS2) may mediate metabolic syndrome (MetS) in patients receiving olanzapine monotherapy. 216 schizoph Show more
In this study, we hypothesized that fatty acid desaturase-1 (FADS1) and fatty acid desaturase-2 (FADS2) may mediate metabolic syndrome (MetS) in patients receiving olanzapine monotherapy. 216 schizophrenia patients were recruited. There is a significant difference between the patients with or without MetS in term of the expression of FADS1 mRNA (F = 4.58, P = 0.03), but not FADS2 mRNA (F = 1.29, P = 0.26). We observed a positive association between FADS1 mRNA and high-density lipoprotein cholesterol (P = 0.04), and a negative association between FADS1 mRNA and systolic blood pressure (P = 0.04). Our findings implied that FADS1 may be an important genetic modifier that can regulate olanzapine-associated metabolic disturbance. Show less
no PDF DOI: 10.1016/j.ajp.2020.102352
FADS1
Tianyao Liu, Qun Lu, Jin Liu +12 more · 2020 · Cell death & disease · Nature · added 2026-04-24
Numerous evidences have shown that circular RNAs (circRNAs) play a key role in regulating the pathogenesis of cancer. However, the mechanism of circRNAs in urothelial carcinoma of bladder (UCB) remain Show more
Numerous evidences have shown that circular RNAs (circRNAs) play a key role in regulating the pathogenesis of cancer. However, the mechanism of circRNAs in urothelial carcinoma of bladder (UCB) remains largely unclear. In this study, we found circFAM114A2 was significantly downregulated both in UCB tissue specimens and cell lines, and the expression level was highly correlated with pathological TNM stage and grade. Functionally, overexpression of circFAM114A2 dramatically inhibited the migration, invasion and proliferation of UCB cells in vitro, and suppressed tumor growth in vivo. Mechanistically, we confirmed miR-762 was copiously pulled down by circFAM114A2 in 5637 and T24 cells. Fluorescence in situ hybridization (FISH) further indicated the cytoplasmic interactions between circFAM114A2 and miR-762. By using luciferase reporter assay, we found that miR-762 could directly target TP63. Subsequently, we found that circFAM114A2 might increase the expression of ∆NP63 (main isoform of TP63 in UCB) by sponging miR-762. Taken together, our results demonstrated that circFAM114A2 might serve as a competing endogenous RNA (ceRNA) of miR-762 in regulating the expression of ∆NP63, thus suppressed UCB progression through circFAM114A2/miR-762/∆NP63 axis. Show less
📄 PDF DOI: 10.1038/s41419-020-2226-5
FAM114A2
Yadav Wagley, Alessandra Chesi, Parker K Acevedo +5 more · 2020 · Stem cells (Dayton, Ohio) · Wiley · added 2026-04-24
Osteoblast differentiation of bone marrow-derived human mesenchymal stem cells (hMSC) can be induced by stimulation with canonical Notch ligand, Jagged1, or bone morphogenetic proteins (BMPs). However Show more
Osteoblast differentiation of bone marrow-derived human mesenchymal stem cells (hMSC) can be induced by stimulation with canonical Notch ligand, Jagged1, or bone morphogenetic proteins (BMPs). However, it remains elusive how these two pathways lead to the same phenotypic outcome. Since Runx2 is regarded as a master regulator of osteoblastic differentiation, we targeted Runx2 with siRNA in hMSC. This abrogated both Jagged1 and BMP2 mediated osteoblastic differentiation, confirming the fundamental role for Runx2. However, while BMP stimulation increased Runx2 and downstream Osterix protein expression, Jagged1 treatment failed to upregulate either, suggesting that canonical Notch signals require basal Runx2 expression. To fully understand the transcriptomic profile of differentiating osteoblasts, RNA sequencing was performed in cells stimulated with BMP2 or Jagged1. There was common upregulation of ALPL and extracellular matrix genes, such as ACAN, HAS3, MCAM, and OLFML2B. Intriguingly, genes encoding components of Notch signaling (JAG1, HEY2, and HES4) were among the top 10 genes upregulated by both stimuli. Indeed, ALPL expression occurred concurrently with Notch activation and inhibiting Notch activity for up to 24 hours after BMP administration with DAPT (a gamma secretase inhibitor) completely abrogated hMSC osteoblastogenesis. Concordantly, RBPJ (recombination signal binding protein for immunoglobulin kappa J region, a critical downstream modulator of Notch signals) binding could be demonstrated within the ALPL and SP7 promoters. As such, siRNA-mediated ablation of RBPJ decreased BMP-mediated osteoblastogenesis. Finally, systemic Notch inhibition using diabenzazepine (DBZ) reduced BMP2-induced calvarial bone healing in mice supporting the critical regulatory role of Notch signaling in BMP-induced osteoblastogenesis. Show less
no PDF DOI: 10.1002/stem.3245
HEY2
Xiao Wang, Chengfeng Ding, Wenxia Yu +15 more · 2020 · Cell reports · Elsevier · added 2026-04-24
The advent of base editors (BEs) holds great potential for correcting pathogenic-related point mutations to treat relevant diseases. However, Cas9 nickase (nCas9)-derived BEs lead to DNA double-strand Show more
The advent of base editors (BEs) holds great potential for correcting pathogenic-related point mutations to treat relevant diseases. However, Cas9 nickase (nCas9)-derived BEs lead to DNA double-strand breaks, which can trigger unwanted DNA damage response (DDR). Here, we show that the original version of catalytically dead Cas12a (dCas12a)-conjugated BEs induce a basal level of DNA breaks and minimally activate DDR proteins, including H2AX, ATM, ATR, and p53. By fusing dCas12a with engineered human apolipoprotein B mRNA editing enzyme, catalytic polypeptide-like 3A (APOBEC3A), we further develop the BEACON (base editing induced by human APOBEC3A and Cas12a without DNA break) system to achieve enhanced deamination efficiency and editing specificity. Efficient C-to-T editing is achieved by BEACON in mammalian cells at levels comparable to AncBE4max, with only low levels of DDR and minimal RNA off-target mutations. Importantly, BEACON induces in vivo base editing in mouse embryos, and targeted C-to-T conversions are detected in F0 mice. Show less
no PDF DOI: 10.1016/j.celrep.2020.107723
HSD17B12
Degan Lu, Jiameng Lu, Xiaoqing Ji +5 more · 2020 · International journal of molecular medicine · added 2026-04-24
Type 2 cytokine‑associated immunity may be involved in the pathogenesis of allergic asthma. Although interleukin 27 (IL‑27) has been reported as an initiator and suppressor of T‑helper 1 (Th1) and T‑h Show more
Type 2 cytokine‑associated immunity may be involved in the pathogenesis of allergic asthma. Although interleukin 27 (IL‑27) has been reported as an initiator and suppressor of T‑helper 1 (Th1) and T‑helper 2 (Th2) responses, respectively, its effects on the development of asthma remain unclear. In the present study, mice were induced and challenged with ovalbumin and received subsequent intranasal administration of IL‑27. Total and differential cell counts were determined from Wright‑Giemsa‑stained cytospins, whereas the cytokine levels were detected using ELISA. In addition, the expression levels of signal transducer and activator of transcription (STAT) 1, STAT3, GATA‑binding protein‑3 (GATA3) and T‑bet (T‑box transcription factor) were analyzed in T cells by western blot analysis. Their corresponding mRNA expression levels were determined by quantitative PCR. Airway remodeling was assessed by conventional pathological techniques. The results indicated that intranasal administration of IL‑27 ameliorated airway inflammation and hyperresponsiveness in an acute model of asthma. Furthermore, IL‑27 prevented airway remodeling in a chronic model of asthma. Following administration of IL‑27, the mRNA expression levels of STAT1 and T‑bet were upregulated, while those of GATA3 were downregulated. Moreover, the phosphorylation levels of STAT1 and STAT3 were increased. Taken together, these findings demonstrated that intranasal administration of IL‑27 ameliorated Th2‑related allergic lung inflammation and remodeling in mouse models of asthma by repairing both the STAT1 and STAT3 pathways. Show less
📄 PDF DOI: 10.3892/ijmm.2020.4622
IL27
Meng Zhang, Xiuxiu Tan, Junjie Huang +7 more · 2020 · Medical science monitor : international medical journal of experimental and clinical research · added 2026-04-24
The authors informed the journal that an error occurred in their manuscript.Figure 3C was mistakenly merged by the authors.The new version of the Figure 3C is as below.Reference:1. Meng Zhang, Xiuxiu Show more
The authors informed the journal that an error occurred in their manuscript.Figure 3C was mistakenly merged by the authors.The new version of the Figure 3C is as below.Reference:1. Meng Zhang, Xiuxiu Tan, Junjie Huang, Zekai Ke, Yukun Ge, Hu Xiong, Wei Lu, Lu Fang, Zhiming Cai, Song Wu: Association of 3 Common Polymorphisms of IL-27 Gene with Susceptibility to Cancer in Chinese: Evidence From an Updated Meta-Analysis of 27 Studies. Med Sci Monit 2015; 21: 2505-2513. DOI: 10.12659/MSM.895032. Show less
no PDF DOI: 10.12659/MSM.923878
IL27
Shenqian Zhang, Ying Lu, Chenyang Jiang · 2020 · Journal of receptor and signal transduction research · Taylor & Francis · added 2026-04-24
Pathological cardiac hypertrophy is a major risk factor for cardiovascular morbidity and mortality. Histone demethylases (KDMs) are emerging regulators of transcriptional reprograming in cancer, howev Show more
Pathological cardiac hypertrophy is a major risk factor for cardiovascular morbidity and mortality. Histone demethylases (KDMs) are emerging regulators of transcriptional reprograming in cancer, however, their potential role in abnormal heart growth and fibrosis remains largely unknown. The aim of this current study was to examine the role of JMJD1C, an H3K9me2 specific demethylase, in angiotensin II (Ang II) induced cardiac hypertrophy and fibrosis. In this study, we observed that Ang II could increase the expression of JMJD1C detected by Western blot and RT-qPCR Show less
no PDF DOI: 10.1080/10799893.2020.1734819
JMJD1C
Ying Zhang, Can Li, Xiuqi Li +4 more · 2020 · Molecular medicine reports · added 2026-04-24
Clinical studies have demonstrated that trimetazidine (TMZ) possesses a synergistic hypolipidemic effect together with statins, but the underlying mechanism remains to be elucidated. The present study Show more
Clinical studies have demonstrated that trimetazidine (TMZ) possesses a synergistic hypolipidemic effect together with statins, but the underlying mechanism remains to be elucidated. The present study aimed to investigate the role of TMZ in non‑alcoholic fatty liver disease (NAFLD). By investigating the TMZ treatment of NAFLD, it was identified that high‑fat diet (HFD) mice exhibit significant changes in several physiologic indices, including body weight, plasma lipids and glucose tolerance. Notably, hepatocyte bullous steatosis and fibrosis in HFD mice are greatly attenuated by 8 weeks of TMZ treatments. The results of the present study also indicated that the expression of carbohydrate‑responsive element‑binding protein (ChREBP), fatty acid synthase and acetyl‑CoA carboxylase were all significantly reduced in the HFD + TMZ group compared with the HFD group. In order to confirm the hypothesis in vitro, the palmitate‑treated liver cancer cell line (HepG2) was employed and similar results were obtained in TMZ‑treated HepG2 cells. Furthermore, TMZ markedly upregulated the AMP‑activated protein kinase (AMPK) signaling pathway and reduced the expression of forkhead box O1 (FOXO1) in the cells, while these effects controlled by TMZ were abolished by the AMPK inhibitor Compound C. The present study reported that knockdown of FOXO1 expression by FOXO1 small interfering RNA resulted in a reduction of ChREBP protein expression and post‑transcriptional activity. In summary, for the first time, to the best of the authors' knowledge, the present study revealed a novel role of TMZ in hepatic steatosis; TMZ ameliorated ChREBP‑induced de novo lipogenesis by activating the AMPK‑FOXO1 pathway. Show less
📄 PDF DOI: 10.3892/mmr.2020.11309
MLXIPL
Jinyuan Si, Bo Huang, Guiping Lan +8 more · 2020 · Translational cancer research · added 2026-04-24
Nasopharyngeal carcinoma (NPC) is one of the most common cancers. To investigate the gene mutation profile of NPC patients, we performed whole exome sequencing (WES) in tumor cells, peripheral blood c Show more
Nasopharyngeal carcinoma (NPC) is one of the most common cancers. To investigate the gene mutation profile of NPC patients, we performed whole exome sequencing (WES) in tumor cells, peripheral blood cells, and circulating tumor cells (CTCs) of primitive and metastatic NPC patients, and explored its clinical significance. Primitive tumor cells, white blood cells, and CTCs of patients were collected and hybridized with probes targeting whole exons. Mutational signatures, signaling pathways, and cancer associated genes from CTCs cells of two primitive and two metastatic patients were analyzed using gene ontology (GO) method. The mutational landscape of four primitive tumors showed that there were more These changes are strongly relevant to their clinical characteristics and therapeutic strategy. Show less
📄 PDF DOI: 10.21037/tcr-19-2899
MLXIPL
Jian-Hui Shi, Jun-Yu Lu, Heng-Yu Chen +15 more · 2020 · Diabetes · added 2026-04-24
Excessive fructose consumption is closely linked to the pathogenesis of metabolic disease. Carbohydrate response element-binding protein (ChREBP) is a transcription factor essential for fructose toler Show more
Excessive fructose consumption is closely linked to the pathogenesis of metabolic disease. Carbohydrate response element-binding protein (ChREBP) is a transcription factor essential for fructose tolerance in mice. However, the functional significance of liver ChREBP in fructose metabolism remains unclear. Here, we show that liver ChREBP protects mice against fructose-induced hepatotoxicity by regulating liver glycogen metabolism and ATP homeostasis. Liver-specific ablation of ChREBP did not compromise fructose tolerance, but rather caused severe transaminitis and hepatomegaly with massive glycogen overload in mice fed a high-fructose diet, while no obvious inflammation, cell death, or fibrosis was detected in the liver. In addition, liver ATP contents were significantly decreased by ChREBP deficiency in the fed state, which was rendered more pronounced by fructose feeding. Mechanistically, liver contents of glucose-6-phosphate (G6P), an allosteric activator of glycogen synthase, were markedly increased in the absence of liver ChREBP, while fasting-induced glycogen breakdown was not compromised. Furthermore, hepatic overexpression of LPK, a ChREBP target gene in glycolysis, could effectively rescue glycogen overload and ATP reduction, as well as mitigate fructose-induced hepatotoxicity in ChREBP-deficient mice. Taken together, our findings establish a critical role of liver ChREBP in coping with hepatic fructose stress and protecting from hepatotoxicity by regulating LPK. Show less
no PDF DOI: 10.2337/db19-0388
MLXIPL
Hongmin Chen, Yijiang Song, Chuangzhong Deng +7 more · 2020 · Aging · Impact Journals · added 2026-04-24
Tumor microenvironments are strongly related to tumor development, and immune-infiltrating cells and immune-related molecules are potential prognostic markers. However, the shortcomings of traditional Show more
Tumor microenvironments are strongly related to tumor development, and immune-infiltrating cells and immune-related molecules are potential prognostic markers. However, the shortcomings of traditional measurement methods limit the accurate evaluation of various components in tumor microenvironments. With the rapid advancement of Next-Generation RNA Sequencing technology, dedicated and in-depth analyses of immune filtration within the tumor microenvironment has been achieved. In this study, we combined the bioinformatics analysis methods ESTIMATE, CIBERSORT, and ssGSEA to characterize the immune infiltration of sarcomas and to identify specific immunomodulators of different pathological subtypes. We further extracted a functional enrichment of significant immune-related genes related to improved prognosis, including NR1H3, VAMP5, GIMAP2, GBP2, HLA-E and CRIP1. Overall, the immune microenvironment is an important prognostic determinant of sarcomas and may be a potential resource for developing effective immunotherapy. Show less
no PDF DOI: 10.18632/aging.202229
NR1H3
Zepeng Zhang, Lu Zhai, Jing Lu +7 more · 2020 · Oxidative medicine and cellular longevity · added 2026-04-24
Atherosclerosis (AS) is the killer of human health and longevity, which is majorly caused by oxidized lipoproteins that attack macrophages in the endarterium. The Shen-Hong-Tong-Luo (SHTL) formula has Show more
Atherosclerosis (AS) is the killer of human health and longevity, which is majorly caused by oxidized lipoproteins that attack macrophages in the endarterium. The Shen-Hong-Tong-Luo (SHTL) formula has shown great clinical efficacy and vascular protective effect for over 30 years in China, to attenuate AS progression. However, its pharmacological mechanism needs more investigation. In this study, we first investigated the chemical composition of SHTL by fingerprint analysis using high-performance liquid chromatography. In primary mouse peritoneal macrophages induced by lipopolysaccharide (LPS), we found that SHTL pretreatment suppressed reactive oxygen species accumulation and reversed the increases of the inflammatory factors, TNF- Show less
no PDF DOI: 10.1155/2020/3426925
NR1H3
Tomoe Tsuboi, Rui Lu, Takayuki Yonezawa +4 more · 2020 · Atherosclerosis · Elsevier · added 2026-04-24
Nobiletin (NOB), a functional ingredient found in citrus peel, is said to act against diabetes, obesity, and atherosclerosis. It has been reported to activate AMPK pathway, as well as increase SREBP1c Show more
Nobiletin (NOB), a functional ingredient found in citrus peel, is said to act against diabetes, obesity, and atherosclerosis. It has been reported to activate AMPK pathway, as well as increase SREBP1c, PPARα and PPARγ expression. However, no molecular mechanism has been elucidated to be able to integrate these sporadic findings with some controversies to lead to concrete outcomes. In this study, regulation of HDL biogenesis by NOB was investigated modulating ABCA1 and ABCG1 expression. Regulation of ABCA1/G1 by NOB was investigated in mouse macrophages J774.1. NOB increased mRNA and protein levels of ABCA1/G1, and cell cholesterol release by these factors. It also increased mRNA of PPARγ and LXRα but not PPARα. The increase in ABCA1/G1 mRNA levels by NOB was suppressed by antagonists of PPARγ and LXRα. The increase in PPARγ mRNA levels by NOB was suppressed by an LXRα antagonist, and the increase in LXRα mRNA levels was suppressed by a PPARγ antagonist. NOB increased CD36 mRNA and this was suppressed by an LXRα antagonist. The increase in ABCA1 mRNA by a PPARγ agonist was also suppressed by an LXRα antagonist. NOB did not influence LPL1 mRNA expression levels. NOB stimulated AMPK phosphorylation, and the increase in ABCA1/G1, LXRα and PPARγ mRNA levels and ABCA1/G1 protein levels by NOB was reversed by an AMPK inhibitor. AMPK siRNA suppressed ABCA1 expression. NOB activates AMPK and subsequently LXRα to promote the expression of ABCA1 and ABCG1, and an LXRα - PPARγ loop pathway amplifies these signals. Show less
no PDF DOI: 10.1016/j.atherosclerosis.2020.01.024
NR1H3
Jialin Dai, Chonghe Zhang, Lin Guo +9 more · 2020 · Cell death & disease · Nature · added 2026-04-24
Mixed-lineage kinase domain-like protein (MLKL) is known as the terminal executor of necroptosis. However, its function outside of necroptosis is still not clear. Herein, we demonstrate that MLKL prom Show more
Mixed-lineage kinase domain-like protein (MLKL) is known as the terminal executor of necroptosis. However, its function outside of necroptosis is still not clear. Herein, we demonstrate that MLKL promotes vascular inflammation by regulating the expression of adhesion molecules ICAM1, VCAM1, and E-selectin in endothelial cells (EC). MLKL deficiency suppresses the expression of these adhesion molecules, thereby reducing EC-leukocyte interaction in vitro and in vivo. Mechanistically, we show that MLKL interacts with RBM6 to promote the mRNA stability of adhesion molecules. In conclusion, this study identified a novel role of MLKL in regulating endothelial adhesion molecule expression and local EC-leukocyte interaction during acute inflammation. Show less
no PDF DOI: 10.1038/s41419-020-2483-3
RBM6
Xin-Mei Lin, Shao-Bin Liu, Ying-Hua Luo +8 more · 2020 · BioMed research international · added 2026-04-24
10-Hydroxy-2-decenoic acid (10-HDA), also known as royal jelly acid, has a variety of physiological functions, and recent studies have shown that it also has anticancer effects. However, its anticance Show more
10-Hydroxy-2-decenoic acid (10-HDA), also known as royal jelly acid, has a variety of physiological functions, and recent studies have shown that it also has anticancer effects. However, its anticancer mechanisms have not been clearly defined. In this study, we investigated the underlying mechanisms of 10-HDA in A549 human lung cancer cells. We used Cell Counting Kit-8 assay, scratch wound healing assay, flow cytometry, and western blot analysis to investigate its apoptotic effects and underlying mechanism. Our results showed that 10-HDA inhibited the proliferation of three types of human lung cancer cells and had no significant toxic effects on normal cells. Accompanying reactive oxygen species (ROS), 10-HDA induced A549 cell apoptosis by regulating mitochondrial-associated apoptosis, and caused cell cycle arrest at the G0/G1 phase in a time-dependent manner. Meanwhile, 10-HDA also regulated mitogen-activated protein kinase (MAPK), signal transducer and activator of transcription 3 (STAT3), and nuclear factor kappa B (NF- Show less
no PDF DOI: 10.1155/2020/3042636
SNAI1
Chenghao Lu, Zheyu Yang, Dingye Yu +2 more · 2020 · Pathology, research and practice · Elsevier · added 2026-04-24
Colorectal cancer (CRC) was one of the most malignant tumors worldwide due to its metastasis. Epithelial-to-mesenchymal transition (EMT) plays an important role in CRC migration, and transforming grow Show more
Colorectal cancer (CRC) was one of the most malignant tumors worldwide due to its metastasis. Epithelial-to-mesenchymal transition (EMT) plays an important role in CRC migration, and transforming growth factor-β (TGF-β) works as a dominating cytokine in CRC EMT process. Here, we originally identified RUNX1 as an important factor among TGF-β induced EMT in CRC. We found that RUNX1 was overexpressed with the treatment of TGF-β, accompanied with enhanced cancer cell migration and EMT which was characterized by up-graded N-Cadherin levels. Vice versa, knockdown of RUNX1 attenuated the migration ability of TGF-β induced CRC cells. In addition, decreased expression of N-Cadherin suggested that EMT was also attenuated after knocking down RUNX1. Similar decrease was observed in EMT regulator snail family transcriptional repressor 1 (SNAI1). And the knockdown effect of RUNX1 cannot be reversed by the addition of TGF-β. Moreover, we observed that RUNX1 expression was higher in CRC tumor tissues than in normal epithelial tissues. The enhanced expression was detected in cancer cell nucleus. These results revealed RUNX1 could regulate colorectal cancer migration via TGF-β signaling pathway, and RUNX1 might serve as a potential target for preventing CRC metastasis. Show less
no PDF DOI: 10.1016/j.prp.2020.153142
SNAI1
Guoqing Wan, Jiang Zhu, Xuefeng Gu +7 more · 2020 · British journal of cancer · Nature · added 2026-04-24
Human Schlafen 5 (SLFN5) has been reported to inhibit or promote cell invasion in tumours depending on their origin. However, its role in breast cancer (BRCA) is undetermined. Differential expression Show more
Human Schlafen 5 (SLFN5) has been reported to inhibit or promote cell invasion in tumours depending on their origin. However, its role in breast cancer (BRCA) is undetermined. Differential expression analyses using The Cancer Genome Atlas (TCGA) data, clinical samples and cell lines were performed. Lentiviral knockdown and overexpression experiments were performed to detect changes in cell morphology, molecular markers and invasion. Chromatin immunoprecipitation-sequencing (ChIP-Seq) and luciferase reporter assays were performed to detect the SLFN5-binding motif. TCGA, clinical samples and cell lines showed that SLFN5 expression was negatively correlated with BRCA metastasis. SLFN5 knockdown induced epithelial-mesenchymal transition (EMT) and enhanced invasion in BRCA cell lines. However, overexpression triggered mesenchymal-epithelial transition (MET). SLFN5 inhibited the expression of ZEB1 but not ZEB2, SNAI1, SNAI2, TWIST1 or TWIST2. Knockdown and overexpression of ZEB1 indicated that it was a mediator of the SLFN5-governed phenotype and invasion changes. Moreover, SLFN5 inhibited ZEB1 transcription by directly binding to the SLFN5-binding motif on the ZEB1 promoter, but a SLFN5 C-terminal deletion mutant did not. SLFN5 regulates reversible epithelial and mesenchymal transitions, and inhibits BRCA metastasis by suppression of ZEB1 transcription, suggesting that SLFN5 could be a potential target for BRCA therapy. Show less
no PDF DOI: 10.1038/s41416-020-0873-z
SNAI1